钆
多塔
体内
核医学
化学
胶质瘤
磁共振造影剂
癌症研究
细胞
磁共振成像
体内分布
U87型
医学
核磁共振
体外
放射化学
螯合作用
生物
放射科
生物化学
有机化学
生物技术
物理
作者
Gelsomina De Stasió,Deepika Rajesh,Patrizia Casalbore,Matthew J. Daniels,Robert J. Erhardt,B. H. Frazer,L. M. Wiese,Katherine L. Richter,Brandon R. Sonderegger,Benjamin Gilbert,Sébastien Schaub,Rachel J. Cannara,J. F. Crawford,Mary K. Gilles,Tolek Tyliszczak,J. F. Fowler,Luigi Maria Larocca,Steven Howard,Delio Mercanti,Minesh P. Mehta
标识
DOI:10.1179/016164105x17206
摘要
AbstractAbstract Objective: Gadolinium neutron capture therapy (GdNCT) is a potential treatment for malignant tumors based on two steps: (1) injection of a tumor-specific 157Gd compound; (2) tumor irradiation with thermal neutrons. The GdNC reaction can induce cell death provided that Gd is proximate to DNA. Here, we studied the nuclear uptake of Gd by glioblastoma (GBM) tumor cells after treatment with two Gd compounds commonly used for magnetic resonance imaging, to evaluate their potential as GdNCT agents. Methods: Using synchrotron X-ray spectromicroscopy, we analyzed the Gd distribution at the subcellular level in: (1) human cultured GBM cells exposed to Gd-DTPA or Gd-DOTA for 0–72hours; (2) intracerebrally implanted C6 glioma tumors in rats injected with one or two doses of Gd-DOTA, and (3) tumor samples from GBM patients injected with Gd-DTPA. Results: In cell cultures, Gd-DTPA and Gd-DOTA were found in 84% and 56% of the cell nuclei, respectively. In rat tumors, Gd penetrated the nuclei of 47% and 85% of the tumor cells, after single and double injection of Gd-DOTA, respectively. In contrast, in human GBM tumors 6.1% of the cell nuclei contained Gd-DTPA. Discussion: Efficacy of Gd-DTPA and Gd-DOTA as GdNCT agents is predicted to be low, due to the insufficient number of tumor cell nuclei incorporating Gd. Although multiple administration schedules in vivo might induce Gd penetration into more tumor cell nuclei, a search for new Gd compounds with higher nuclear affinity is warranted before planning GdNCT in animal models or clinical trials.Keywords: GD-DOTAGD-DTPAGADOLINIUM NEUTRON CAPTURE THERAPY (GDNCT)GLIOBLASTOMASPECTROMICROSCOPYSYNCHROTRON
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